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Superconducting fluxonium qubits provide a promising alternative to transmons on the path toward large-scale superconductor-based quantum computing due to their better coherence and larger anharmonicity.
Demonstration of conditional gate operation using superconducting charge qubits
T. Yamamoto, Yu A. Pashkin, O. Astaflev, Y. Nakamura, and J. S. Tsai · 2003
Earlier work this paper cites.
Cavity quantum electrodynamics for superconducting electrical circuits: An architecture for quantum computation
Alexandre Blais, Ren Shou Huang, Andreas Wallraff, S. M. Girvin, and R. J. Schoelkopf · 2004
Earlier work this paper cites.
Charge-insensitive qubit design derived from the Cooper pair box
Jens Koch, Terri M Yu, Jay Gambetta, A A Houck, D I Schuster, J Majer, Alexandre Blais, M H Devoret, S M Girvin, and R J Schoelkopf · 2007
Earlier work this paper cites.
Controlling the spontaneous emission of a superconducting transmon qubit
A. A. Houck, J. A. Schreier, B. R. Johnson, J. M. Chow, Jens Koch, J. M. Gambetta, D. I. Schuster, L. Frunzio, M. H. Devoret, S. M. Girvin, and R. J. Schoelkopf · 2008
Earlier work this paper cites.
Fluxonium: Single cooper-pair circuit free of charge offsets
Vladimir E. Manucharyan, Jens Koch, Leonid I. Glazman, and Michel H. Devoret · 2009
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Simple Pulses for Elimination of Leakage in Weakly Nonlinear Qubits
F Motzoi, J M Gambetta, P Rebentrost, and F K Wilhelm · 2009
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Reduced phase error through optimized control of a superconducting qubit
Erik Lucero, Julian Kelly, Radoslaw C Bialczak, Mike Lenander, Matteo Mariantoni, Matthew Neeley, A D O’connell, Daniel Sank, H Wang, Martin Weides, James Wenner, Tsuyoshi Yamamoto, A N Cleland, and John M Martinis · 2010
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Efficient measurement of quantum gate error by interleaved randomized benchmarking
Easwar Magesan, Jay M. Gambetta, B. R. Johnson, Colm A. Ryan, Jerry M. Chow, Seth T. Merkel, Marcus P. Da Silva, George A. Keefe, Mary B. Rothwell, Thomas A. Ohki, Mark B. Ketchen, and M. Steffen · 2012
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Process verification of two-qubit quantum gates by randomized benchmarking
A. D. Corcoles, Jay M. Gambetta, Jerry M. Chow, John A. Smolin, Matthew Ware, Joel Strand, B. L T Plourde, and M. Steffen · 2013
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Coherent josephson qubit suitable for scalable quantum integrated circuits
R. Barends, J. Kelly, A. Megrant, D. Sank, E. Jeffrey, Y. Chen, Y. Yin, B. Chiaro, J. Mutus, C. Neill, P. O’Malley, P. Roushan, J. Wenner, T. C. White, A. N. Cleland, and John M. Martinis · 2013
Earlier work this paper cites.
Coherent suppression of electromagnetic dissipation due to superconducting quasiparticles
Ioan M. Pop, Kurtis Geerlings, Gianluigi Catelani, Robert J. Schoelkopf, Leonid I. Glazman, and Michel H. Devoret · 2014
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Superconducting quantum circuits at the surface code threshold for fault tolerance
R Barends, J Kelly, A Megrant, A Veitia, D Sank, E Jeffrey, T C White, J Mutus, a G Fowler, B Campbell, Y Chen, Z Chen, B Chiaro, A Dunsworth, C Neill, P O’Malley, P Roushan, A Vainsencher, J Wenner, a N Korotkov, a N Cleland, and John M Martinis · 2014
Earlier work this paper cites.
Fabrication and characterization of aluminum airbridges for superconducting microwave circuits
Zijun Chen, A. Megrant, J. Kelly, R. Barends, J. Bochmann, Yu Chen, B. Chiaro, A. Dunsworth, E. Jeffrey, J. Y. Mutus, P. J.J. O’Malley, C. Neill, P. Roushan, D. Sank, A. Vainsencher, J. Wenner, T. C. White, A. N. Cleland, and John M. Martinis · 2014
Cited alongside, same era.
Procedure for systematically tuning up cross-talk in the cross-resonance gate
Sarah Sheldon, Easwar Magesan, Jerry M. Chow, and Jay M. Gambetta · 2016
Cited alongside, same era.
Efficient Z gates for quantum computing
David C. McKay, Christopher J. Wood, Sarah Sheldon, Jerry M. Chow, and Jay M. Gambetta · 2017
Cited alongside, same era.
Tunable Coupling Scheme for Implementing High-Fidelity Two-Qubit Gates
Fei Yan, Philip Krantz, Youngkyu Sung, Morten Kjaergaard, Daniel L. Campbell, Terry P. Orlando, Simon Gustavsson, and William D. Oliver · 2018
Cited alongside, same era.
Fast and Unconditional All-Microwave Reset of a Superconducting Qubit
P. Magnard, P. Kurpiers, B. Royer, T. Walter, J. C. Besse, S. Gasparinetti, M. Pechal, J. Heinsoo, S. Storz, A. Blais, and A. Wallraff · 2018
Cited alongside, same era.
Tunable coupling scheme for implementing two-qubit gates on fluxonium qubits
I. N. Moskalenko, I. S. Besedin, I. A. Simakov, and A. V. Ustinov · 2021
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New material platform for superconducting transmon qubits with coherence times exceeding 0.3 milliseconds
Alexander P.M. Place, Lila V.H. Rodgers, Pranav Mundada, Basil M. Smitham, Mattias Fitzpatrick, Zhaoqi Leng, Anjali Premkumar, Jacob Bryon, Andrei Vrajitoarea, Sara Sussman, Guangming Cheng, Trisha Madhavan, Harshvardhan K. Babla, Xuan Hoang Le, Youqi Gang, Berthold Jäck, András Gyenis, Nan Yao, Robert J. Cava, Nathalie P. de Leon, and Andrew A. Houck · 2021
Later among the works it cites.
Realization of High-Fidelity CZ and ZZ -Free iSWAP Gates with a Tunable Coupler
Youngkyu Sung, Leon Ding, Jochen Braumüller, Antti Vepsäläinen, Bharath Kannan, Morten Kjaergaard, Ami Greene, Gabriel O. Samach, Chris McNally, David Kim, Alexander Melville, Bethany M. Niedzielski, Mollie E. Schwartz, Jonilyn L. Yoder, Terry P. Orlando, Simon Gustavsson, and William D. Oliver · 2021
Later among the works it cites.
Universal Fast-Flux Control of a Coherent, Low-Frequency Qubit
Helin Zhang, Srivatsan Chakram, Tanay Roy, Nathan Earnest, Yao Lu, Ziwen Huang, D. K. Weiss, Jens Koch, and David I. Schuster · 2021
Later among the works it cites.
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Calibration of a cross-resonance two-qubit gate between directly coupled transmons
A.D. Patterson, J. Rahamim, T. Tsunoda, P.A. Spring, S. Jebari, K. Ratter, M. Mergenthaler, G. Tancredi, B. Vlastakis, M. Esposito, and P.J. Leek · 2019
Cited alongside, same era.
Suppression of qubit crosstalk in a tunable coupling superconducting circuit
Pranav Mundada, Gengyan Zhang, Thomas Hazard, and Andrew Houck · 2019
Cited alongside, same era.
High-Coherence Fluxonium Qubit
Long B. Nguyen, Yen Hsiang Lin, Aaron Somoroff, Raymond Mencia, Nicholas Grabon, and Vladimir E. Manucharyan · 2019
Cited alongside, same era.
Implementation of XY entangling gates with a single calibrated pulse
Deanna M Abrams, Nicolas Didier, Blake R Johnson, Marcus P da Silva, and Colm A Ryan · 2020
Cited alongside, same era.
Fast parametric two-qubit gates with suppressed residual interaction using the second-order nonlinearity of a cubic transmon
Atsushi Noguchi, Alto Osada, Shumpei Masuda, Shingo Kono, Kentaro Heya, Samuel Piotr Wolski, Hiroki Takahashi, Takanori Sugiyama, Dany Lachance-Quirion, and Yasunobu Nakamura · 2020
Cited alongside, same era.
High-Fidelity, High-Scalability Two-Qubit Gate Scheme for Superconducting Qubits
Yuan Xu, Ji Chu, Jiahao Yuan, Jiawei Qiu, Yuxuan Zhou, Libo Zhang, Xinsheng Tan, Yang Yu, Song Liu, Jian Li, Fei Yan, and Dapeng Yu · 2020
Cited alongside, same era.
State preparation of a fluxonium qubit with feedback from a custom FPGA-based platform
Richard Gebauer, Nick Karcher, Daria Gusenkova, Martin Spiecker, Lukas Grünhaupt, Ivan Takmakov, Patrick Winkel, Luca Planat, Nicolas Roch, Wolfgang Wernsdorfer, Alexey V. Ustinov, Marc Weber, Martin Weides, Ioan M. Pop, and Oliver Sander · 2020
Cited alongside, same era.
Fast Logic with Slow Qubits: Microwave-Activated Controlled-Z Gate on Low-Frequency Fluxoniums
Quentin Ficheux, Long B. Nguyen, Aaron Somoroff, Haonan Xiong, Konstantin N. Nesterov, Maxim G. Vavilov, and Vladimir E. Manucharyan · 2021
Later among the works it cites.
Fluxonium: an alternative qubit platform for high-fidelity operations
Feng Bao, Hao Deng, Dawei Ding, Ran Gao, Xun Gao, Cupjin Huang, Xun Jiang, Hsiang-Sheng Ku, Zhisheng Li, Xizheng Ma, Xiaotong Ni, Jin Qin, Zhijun Song, Hantao Sun, Chengchun Tang, Tenghui Wang, Feng Wu, Tian Xia, Wenlong Yu, Fang Zhang, Gengyan Zhang, Xiaohang Zhang, Jingwei Zhou, Xing Zhu, Yaoyun Shi, Jianxin Chen, Hui-Hai Zhao, and Chunqing Deng · 2021
Later among the works it cites.
Parametric-Resonance Entangling Gates with a Tunable Coupler
Eyob A. Sete, Nicolas Didier, Angela Q. Chen, Shobhan Kulshreshtha, Riccardo Manenti, and Stefano Poletto · 2021
Later among the works it cites.
Full control of superconducting qubits with combined on-chip microwave and flux lines
Riccardo Manenti, Eyob A. Sete, Angela Q. Chen, Shobhan Kulshreshtha, Jen Hao Yeh, Feyza Oruc, Andrew Bestwick, Mark Field, Keith Jackson, and Stefano Poletto · 2021
Later among the works it cites.
Topological excitations and bound photon pairs in a superconducting quantum metamaterial
Ilya S Besedin, Maxim A Gorlach, Nikolay N Abramov, Ivan Tsitsilin, Ilya N Moskalenko, Alina A Dobronosova, Dmitry O Moskalev, Alexey R Matanin, Nikita S Smirnov, Ilya A Rodionov, Alexander N Poddubny, and Alexey V Ustinov · 2021
Later among the works it cites.
Towards practical quantum computers: transmon qubit with a lifetime approaching 0.5 milliseconds
Chenlu Wang, Xuegang Li, Huikai Xu, Zhiyuan Li, Junhua Wang, Zhen Yang, Zhenyu Mi, Xuehui Liang, Tang Su, Chuhong Yang, Guangyue Wang, Wenyan Wang, Yongchao Li, Mo Chen, Chengyao Li, Kehuan Linghu, Jiaxiu Han, Yingshan Zhang, Yulong Feng, Yu Song, Teng Ma, Jingning Zhang, Ruixia Wang, Peng Zhao, Weiyang Liu, Guangming Xue, Yirong Jin, and Haifeng Yu · 2022
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Cavity-QED simulation of a quantum metamaterial with tunable disorder
Grigoriy S. Mazhorin, Ilya N. Moskalenko, Ilya S. Besedin, Dmitriy S. Shapiro, Sergey V. Remizov, Walter V. Pogosov, Dmitry O. Moskalev, Anastasia A. Pishchimova, Alina A. Dobronosova, I. A. Rodionov, and Alexey V. Ustinov · 2022
Closest in time.